US11623074B2ActiveUtilityA1

Girth adjustable device

Assignee: JAYOL BENJAMIN ERNEST HELOISPriority: Feb 28, 2018Filed: Feb 28, 2019Granted: Apr 11, 2023
Est. expiryFeb 28, 2038(~11.6 yrs left)· nominal 20-yr term from priority
A61H 19/32A61M 2205/80A61H 19/44A61H 2201/1207A61H 2201/50A61H 23/0263A61M 2205/586A61M 2230/06A61M 29/02A61H 21/00A61M 29/00A61M 2210/1475A61H 2201/0235A61M 2210/167A61M 2205/583A61H 2205/087A61H 2230/06A61M 2205/582
41
PatentIndex Score
0
Cited by
5
References
127
Claims

Abstract

A girth adjustable device for dilation and stretch of body orifices for medical applications, massage, body orifice improvement and activities pleasurable to the body, that can repeatedly, gradually increase and decrease a uniform and sustainable pressure against the entire lateral surface area of body orifices. The girth adjustable device comprises at least one controller, a housing, at least one threaded shaft, at least one module, a plurality of shaft members and at least one sheath. The part of the girth adjustable device that has to be inserted into body orifices is the shaft. In a body orifice, the user increases and decreases the girth size of the shaft via the controller.

Claims

exact text as granted — not AI-modified
I claim: 
     
       1. A girth adjustable device comprising:
 a. at least one controller having a first end, and a second end; 
 b. at least one threaded shaft having a first end, a middle section, a second end, and a longitudinal axis, wherein said first end of said threaded shaft is connected to said second end of said controller; 
 c. a housing having a controller first end, a shaft member second end having a plurality of shaft member grooves and a plurality of shaft member protrusions, and a non-threaded canal, wherein said non-threaded canal receives said first end of said threaded shaft, wherein said housing encloses at least said second end of said controller and said first end of said threaded shaft; 
 d. at least one module having at least one conical section with a slant height, at least one anti-rotation connector selected from a group consisting of: a linear anti-rotation connector, a capital letter T shape anti-rotation connector, and an inclined capital letter T shape anti-rotation connector, and a canal selected from a group consisting of: a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity, wherein said canal receives said threaded shaft; 
 e. a plurality of shaft members having a first end having at least one housing groove, a middle section, at least one module cavity with a sloped edge, at least one module connector groove, and a tip end, wherein said plurality of shaft members surrounds said threaded shaft and said module, wherein said shaft member second end having a plurality of shaft member grooves and a plurality of shaft member protrusions of said housing slidably receives said first end of said shaft member, wherein said module cavity with a sloped edge of said shaft member slidably receives said conical section with a slant height of said module, wherein said module connector groove of said shaft member slidably receives said anti-rotation connector of said module; and 
 f. at least one sheath having a first end, a middle section, a tip end, and a sheath girth, wherein said sheath surrounds at least said plurality of shaft members, wherein said sheath is made of a resilient material, wherein when said controller rotates in the direction of increase of said sheath girth, said threaded shaft rotates, said module prevented from rotating around said longitudinal axis of said threaded shaft by said anti-rotation connector of said module slidably connected to said module connector groove of said shaft member travels along said threaded shaft, said conical section with a slant height of said module slides against said sloped edge of said module cavity with a sloped edge of said shaft member outside said module cavity with a sloped edge of said shaft member, each said shaft member of said plurality of shaft members travels perpendicularly to said longitudinal axis of said threaded shaft in the opposite direction of said longitudinal axis of said threaded shaft, said sheath deforms elastically from its original shape, and girth size of said sheath girth increases, when girth size of said sheath girth increased, when said controller rotates in the direction of decrease of said sheath girth, said threaded shaft rotates, said module prevented from rotating around said longitudinal axis of said threaded shaft by said anti-rotation connector of said module slidably connected to said module connector groove of said shaft member travels back along said threaded shaft, said sheath retrieves its original shape, said conical section with a slant height of said module slides back against said sloped edge of said module cavity with a sloped edge of said shaft member inside said module cavity with a sloped edge of said shaft member, each said shaft member of said plurality of shaft members travels back perpendicularly to said longitudinal axis of said threaded shaft in the direction of said longitudinal axis of said threaded shaft, and girth size of said sheath girth decreases, wherein increase of girth size of said sheath girth and decrease of girth size of said sheath girth are repeatable. 
 
     
     
       2. A girth adjustable device comprising:
 a. at least one controller having a first end, and a second end; 
 b. at least one threaded shaft having a first end, a middle section, a second end, and a longitudinal axis, wherein said first end of said threaded shaft is connected to said second end of said controller; 
 c. a housing having a controller first end, a shaft member second end having a plurality of shaft member grooves and a plurality of shaft member protrusions, a controller canal, and a housing canal selected from a group consisting of: a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity, wherein said controller canal receives said second end of said controller and said first end of said threaded shaft, wherein said housing canal receives said first end of said threaded shaft, wherein said housing encloses at least said second end of said controller and said first end of said threaded shaft; 
 d. at least one module having at least one conical section with a slant height, and a module canal selected from a group consisting of: a non-threaded canal, a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity, wherein said module canal receives said threaded shaft, wherein said module is secured to said threaded shaft; 
 e. a plurality of shaft members having a first end having at least one housing groove, a middle section, at least one module cavity with a sloped edge, and a tip end, wherein said plurality of shaft members surrounds said threaded shaft and said module, wherein said shaft member second end having a plurality of shaft member grooves and a plurality of shaft member protrusions of said housing slidably receives said first end of said shaft member, wherein said module cavity with a sloped edge of said shaft member slidably receives said conical section with a slant height of said module; and 
 f. at least one sheath having a first end, a middle section, a tip end, and a sheath girth, wherein said sheath surrounds at least said plurality of shaft members, wherein said sheath is made of a resilient material, wherein when said controller rotates in the direction of increase of said sheath girth, said controller, said threaded shaft, and said module rotate and travel following said longitudinal axis of said threaded shaft, said conical section with a slant height of said module slides against said sloped edge of said module cavity with a sloped edge of said shaft member outside said module cavity with a sloped edge of said shaft member, each said shaft member of said plurality of shaft members travels perpendicularly to said longitudinal axis of said threaded shaft in the opposite direction of said longitudinal axis of said threaded shaft, said sheath deforms elastically from its original shape, and girth size of said sheath girth increases, wherein when girth size of said sheath girth increased, when said controller rotates in the direction of decrease of said sheath girth, said controller, said threaded shaft, and said module rotate and travel back following said longitudinal axis of said threaded shaft, said sheath retrieves its original shape, said conical section with a slant height of said module slides back against said sloped edge of said module cavity with a sloped edge of said shaft member inside said module cavity with a sloped edge of said shaft member, each said shaft member of said plurality of shaft members travels back perpendicularly to said longitudinal axis of said threaded shaft in the direction of said longitudinal axis of said threaded shaft, and girth size of said sheath girth decreases, wherein increase of girth size of said sheath girth and decrease of girth size of said sheath girth are repeatable. 
 
     
     
       3. A girth adjustable device comprising:
 a. at least one controller having a first end, and a second end having a threaded shaft canal selected from a group consisting of: a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity; 
 b. at least one threaded shaft having a first end, a middle section, a second end, and a longitudinal axis, wherein said threaded shaft canal of said second end of said controller receives said first end of said threaded shaft; 
 c. a housing having a controller first end, a shaft member second end having a plurality of shaft member grooves and a plurality of shaft member protrusions, and a non-threaded canal, wherein said non-threaded canal receives said first end of said threaded shaft, wherein said housing encloses at least said second end of said controller and said first end of said threaded shaft; 
 d. at least one module having at least one conical section with a slant height, at least one anti-rotation connector selected from a group consisting of: a linear anti-rotation connector, a capital letter T shape anti-rotation connector, and an inclined capital letter T shape anti-rotation connector, and a module canal selected from a group consisting of: a non-threaded canal, a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity, wherein said module canal receives said threaded shaft, wherein said module is secured to said threaded shaft; 
 e. a plurality of shaft members having a first end having at least one housing groove, a middle section, at least one module cavity with a sloped edge, at least one module connector groove, and a tip end, wherein said plurality of shaft members surrounds said threaded shaft and said module, wherein said shaft member second end having a plurality of shaft member grooves and a plurality of shaft member protrusions of said housing slidably receives said first end of said shaft member, wherein said module cavity with a sloped edge of said shaft member slidably receives said conical section with a slant height of said module, wherein said module connector groove of said shaft member slidably receives said anti-rotation connector of said module; and 
 f. at least one sheath having a first end, a middle section, a tip end, and a sheath girth, wherein said sheath surrounds at least said plurality of shaft members, wherein said sheath is made of a resilient material, wherein when said controller rotates in the direction of increase of said sheath girth, said threaded shaft and said module prevented from rotating around said longitudinal axis of said threaded shaft by said anti-rotation connector of said module slidably connected to said module connector groove of said shaft member travel following said longitudinal axis of said threaded shaft, said conical section with a slant height of said module slides against said sloped edge of said module cavity with a sloped edge of said shaft member outside said module cavity with a sloped edge of said shaft member, each said shaft member of said plurality of shaft members travels perpendicularly to said longitudinal axis of said threaded shaft in the opposite direction of said longitudinal axis of said threaded shaft, said sheath deforms elastically from its original shape, and girth size of said sheath girth increases, wherein when girth size of said sheath girth increased, when said controller rotates in the direction of decrease of said sheath girth, said threaded shaft and said module prevented from rotating around said longitudinal axis of said threaded shaft by said anti-rotation connector of said module slidably connected to said module connector groove of said shaft member travel back following said longitudinal axis of said threaded shaft, said sheath retrieves its original shape, said conical section with a slant height of said module slides back against said sloped edge of said module cavity with a sloped edge of said shaft member inside said module cavity with a sloped edge of said shaft member, each said shaft member of said plurality of shaft members travels back perpendicularly to said longitudinal axis of said threaded shaft in the direction of said longitudinal axis of said threaded shaft, and girth size of said sheath girth decreases, wherein increase of girth size of said sheath girth and decrease of girth size of said sheath girth are repeatable. 
 
     
     
       4. A girth adjustable device comprising:
 a. at least one controller having a first end, and a second end; 
 b. at least one threaded shaft having a first end, a middle section, a second end, and a longitudinal axis, wherein said first end of said threaded shaft is connected to said second end of said controller; 
 c. a housing having a controller first end, a shaft member second end having a plurality of shaft member grooves and a plurality of shaft member protrusions, at least one module anti-rotation protrusion, and a non-threaded canal, wherein said non-threaded canal receives said first end of said threaded shaft, wherein said housing encloses at least said second end of said controller and said first end of said threaded shaft; 
 d. at least one module having at least one conical section with a slant height, at least one housing anti-rotation cavity, and a canal selected from a group consisting of: a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity, wherein said housing anti-rotation cavity of said module slidably receives said module anti-rotation protrusion of said housing, wherein said canal receives said threaded shaft; 
 e. a plurality of shaft members having a first end having at least one housing groove, a middle section, at least one module cavity with a sloped edge, and a tip end, wherein said plurality of shaft members surrounds said threaded shaft and said module, wherein said shaft member second end having a plurality of shaft member grooves and a plurality of shaft member protrusions of said housing slidably receives said first end of said shaft member, wherein said module cavity with a sloped edge of said shaft member slidably receives said conical section with a slant height of said module; and 
 f. at least one sheath having a first end, a middle section, a tip end, and a sheath girth, wherein said sheath surrounds at least said plurality of shaft members, wherein said sheath is made of a resilient material, wherein when said controller rotates in the direction of increase of said sheath girth, said threaded shaft rotates, said module prevented from rotating around said longitudinal axis of said threaded shaft by said module anti-rotation protrusion of said housing slidably connected to said housing anti-rotation cavity of said module travels along said threaded shaft, said conical section with a slant height of said module slides against said sloped edge of said module cavity with a sloped edge of said shaft member outside said module cavity with a sloped edge of said shaft member, each said shaft member of said plurality of shaft members travels perpendicularly to said longitudinal axis of said threaded shaft in the opposite direction of said longitudinal axis of said threaded shaft, said sheath deforms elastically from its original shape, and girth size of said sheath girth increases, wherein when girth size of said sheath girth increased, when said controller rotates in the direction of decrease of said sheath girth, said threaded shaft rotates, said module prevented from rotating around said longitudinal axis of said threaded shaft by said module anti-rotation protrusion of said housing slidably connected to said housing anti-rotation cavity of said module travels back along said threaded shaft, said sheath retrieves its original shape, said conical section with a slant height of said module slides back against said sloped edge of said module cavity with a sloped edge of said shaft member inside said module cavity with a sloped edge of said shaft member, each said shaft member of said plurality of shaft members travels back perpendicularly to said longitudinal axis of said threaded shaft in the direction of said longitudinal axis of said threaded shaft, and girth size of said sheath girth decreases, wherein increase of girth size of said sheath girth and decrease of girth size of said sheath girth are repeatable. 
 
     
     
       5. A girth adjustable device comprising:
 a. at least one controller having a first end, and a second end having a threaded shaft canal selected from a group consisting of: a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity; 
 b. at least one threaded shaft having a first end, a middle section, a second end, and a longitudinal axis, wherein said threaded shaft canal of said second end of said controller receives said first end of said threaded shaft; 
 c. a housing having a controller first end, a shaft member second end having a plurality of shaft member grooves and a plurality of shaft member protrusions, at least one module anti-rotation protrusion, and a non-threaded canal, wherein said non-threaded canal receives said first end of said threaded shaft, wherein said housing encloses at least said second end of said controller and said first end of said threaded shaft; 
 d. at least one module having at least one conical section with a slant height, at least one housing anti-rotation cavity, and a module canal selected from a group consisting of: a non-threaded canal, a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity, wherein said housing anti-rotation cavity of said module slidably receives said module anti-rotation protrusion of said housing, wherein said module canal receives said threaded shaft, wherein said module is secured to said threaded shaft; 
 e. a plurality of shaft members having a first end having at least one housing groove, a middle section, at least one module cavity with a sloped edge, and a tip end, wherein said plurality of shaft members surrounds said threaded shaft and said module, wherein said shaft member second end having a plurality of shaft member grooves and a plurality of shaft member protrusions of said housing slidably receives said first end of said shaft member, wherein said module cavity with a sloped edge of said shaft member slidably receives said conical section with a slant height of said module; and 
 f. at least one sheath having a first end, a middle section, a tip end, and a sheath girth, wherein said sheath surrounds at least said plurality of shaft members, wherein said sheath is made of a resilient material, wherein when said controller rotates in the direction of increase of said sheath girth, said threaded shaft and said module prevented from rotating around said longitudinal axis of said threaded shaft by said module anti-rotation protrusion of said housing slidably connected to said housing anti-rotation cavity of said module travel following said longitudinal axis of said threaded shaft, said conical section with a slant height of said module slides against said sloped edge of said module cavity with a sloped edge of said shaft member outside said module cavity with a sloped edge of said shaft member, each said shaft member of said plurality of shaft members travels perpendicularly to said longitudinal axis of said threaded shaft in the opposite direction of said longitudinal axis of said threaded shaft, said sheath deforms elastically from its original shape, and girth size of said sheath girth increases, wherein when girth size of said sheath girth increased, when said controller rotates in the direction of decrease of said sheath girth, said threaded shaft and said module prevented from rotating around said longitudinal axis of said threaded shaft by said module anti-rotation protrusion of said housing slidably connected to said housing anti-rotation cavity of said module travel back following said longitudinal axis of said threaded shaft, said sheath retrieves its original shape, said conical section with a slant height of said module slides back against said sloped edge of said module cavity with a sloped edge of said shaft member inside said module cavity with a sloped edge of said shaft member, each said shaft member of said plurality of shaft members travels back perpendicularly to said longitudinal axis of said threaded shaft in the direction of said longitudinal axis of said threaded shaft, and girth size of said sheath girth decreases, wherein increase of girth size of said sheath girth and decrease of girth size of said sheath girth are repeatable. 
 
     
     
       6. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said sheath is secured to said plurality of shaft members and/or said housing. 
     
     
       7. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said sheath is removably secured to said plurality of shaft members or said plurality of shaft members and said housing. 
     
     
       8. A girth adjustable device as recited in  claim 1 ,  2  or  4 , further comprising at least one controller-connector. 
     
     
       9. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said threaded shaft further comprises at least one maximum translation stopper. 
     
     
       10. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said threaded shaft further comprises at least one minimum translation stopper. 
     
     
       11. A girth adjustable device as recited in  claim 1  or  3 , further comprising at least one housing anti-rotation cavity. 
     
     
       12. A girth adjustable device as recited in  claim 11 , further comprising at least one module anti-rotation protrusion. 
     
     
       13. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said housing further comprises at least one bearing, wherein said bearing receives said first end of said threaded shaft, and/or said second end of said controller. 
     
     
       14. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one friction reducer. 
     
     
       15. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said housing further comprises at least one said shaft member protrusion configured as a cantilever snap-fit. 
     
     
       16. A girth adjustable device as recited in  claim 3  or  5 , wherein said housing further comprises a housing canal selected from a group consisting of: a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity, wherein said housing canal receives said threaded shaft. 
     
     
       17. A girth adjustable device as recited in  claim 2 , wherein said housing further comprises said controller canal selected from a group consisting of: a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity. 
     
     
       18. A girth adjustable device as recited in  claim 17 , wherein said second end of said controller is threaded, wherein said controller canal receives said second end of said controller. 
     
     
       19. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said plurality of shaft members further comprises at least one side extension. 
     
     
       20. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said plurality of shaft members further comprises at least one side extension having at least one groove. 
     
     
       21. A girth adjustable device as recited in  claim 20 , wherein said plurality of shaft members further comprises at least one side extension groove connector. 
     
     
       22. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said controller further comprises at least one handle having a bearing. 
     
     
       23. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one shaft member orifice stimulation protrusion. 
     
     
       24. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one sheath orifice stimulation protrusion. 
     
     
       25. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one prostate stimulation protrusion. 
     
     
       26. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one housing external protrusion. 
     
     
       27. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one sheath external protrusion. 
     
     
       28. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one girth adjustment indicator. 
     
     
       29. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one strap. 
     
     
       30. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one grip. 
     
     
       31. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one magnet. 
     
     
       32. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one resilient band. 
     
     
       33. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said housing further comprises at least one spring. 
     
     
       34. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one shaft spring. 
     
     
       35. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one weight. 
     
     
       36. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one penis ring. 
     
     
       37. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one closure element. 
     
     
       38. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4  or  5 , further comprising at least one controller angular transmission. 
     
     
       39. A girth adjustable device as recited in  claim 1 , further comprising at least one threaded shaft angular transmission having a threaded shaft angular transmission housing. 
     
     
       40. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said controller further comprises a plurality of gears. 
     
     
       41. A girth adjustable device as recited in  claim 40 , wherein said controller further comprises a third end, wherein said plurality of gears connects said second end of said controller to said third end of said controller. 
     
     
       42. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said first end of said controller further comprises at least one male connection and at least one female connection, wherein said male connection removably fits into said female connection, wherein when said male connection is connected to said female connection and when said first end of said controller rotates, said second end of said controller rotates. 
     
     
       43. A girth adjustable device as recited in  claim 42 , wherein said controller further comprises at least one locking system. 
     
     
       44. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one visual and/or tactile indication. 
     
     
       45. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one color code. 
     
     
       46. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one serial number. 
     
     
       47. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said controller is made of a rigid material. 
     
     
       48. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said controller is made of a semi-rigid material. 
     
     
       49. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said housing is made of a rigid material. 
     
     
       50. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said housing is made of a semirigid material. 
     
     
       51. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said threaded shaft is made of metal. 
     
     
       52. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said threaded shaft is made of plastic. 
     
     
       53. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said shaft member is made of plastic. 
     
     
       54. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said shaft member is made of metal. 
     
     
       55. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said module is made of plastic. 
     
     
       56. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said module is made of metal. 
     
     
       57. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said sheath is made of silicone. 
     
     
       58. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said sheath is made of rubber. 
     
     
       59. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one electronic part having at least one electric component. 
     
     
       60. A girth adjustable device as recited in  claim 59 , further comprising at least one vibration motor. 
     
     
       61. A girth adjustable device as recited in  claim 59 , further comprising at least one heating element. 
     
     
       62. A girth adjustable device as recited in  claim 59 , further comprising at least one heart rate monitor. 
     
     
       63. A girth adjustable device as recited in  claim 59 , further comprising at least one electrical stimulation electrode. 
     
     
       64. A girth adjustable device as recited in  claim 59 , wherein said electronic part is secured to said girth adjustable device. 
     
     
       65. A girth adjustable device as recited in  claim 59 , wherein said electronic part is removably secured to said girth adjustable device. 
     
     
       66. A girth adjustable device as recited in  claim 59 , wherein said electronic part is operated via at least one electronic controller. 
     
     
       67. A girth adjustable device as recited in  claim 59 , wherein said electronic part is operated by voice. 
     
     
       68. A girth adjustable device as recited in  claim 59 , wherein said electronic part is operated via at least one computer program designed to run on a desktop computer. 
     
     
       69. A girth adjustable device as recited in  claim 59 , wherein said electronic part is operated via at least one computer program designed to run on a mobile device. 
     
     
       70. A girth adjustable device as recited in  claim 59 , further comprising at least one enclosed electric motor having at least one motor having a motor shaft, and a motor housing, wherein said motor shaft of said motor having a motor shaft of said enclosed electric motor is connected to said first end of said controller, wherein when said motor shaft of said motor having a motor shaft of said enclosed electric motor rotates, said first end of said controller and said second end of said controller rotate. 
     
     
       71. A girth adjustable device as recited in  claim 70 , wherein said motor housing of said enclosed electric motor is secured to said housing. 
     
     
       72. A girth adjustable device as recited in  claim 70 , wherein said motor housing of said enclosed electric motor is removably secured to said housing. 
     
     
       73. A girth adjustable device as recited in  claim 70 , wherein said motor shaft of said motor having a motor shaft is secured to said first end of said controller. 
     
     
       74. A girth adjustable device as recited in  claim 70 , wherein said motor shaft of said motor having a motor shaft is removably secured to said first end of said controller. 
     
     
       75. A girth adjustable device as recited in  claim 70 , wherein said enclosed electric motor further comprises at least one planetary gear system. 
     
     
       76. A girth adjustable device as recited in  claim 70 , wherein said enclosed electric motor further comprises a plurality of gears, wherein said plurality of gears connects said motor shaft of said motor having a motor shaft to said controller. 
     
     
       77. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the minimum girth size of said sheath girth is greater than 1.28 inch. 
     
     
       78. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the maximum girth size of said sheath girth is greater than 1.88 inch. 
     
     
       79. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the minimum girth size of said sheath girth is greater than 1.85 inch. 
     
     
       80. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the maximum girth size of said sheath girth is greater than 2.82 inch. 
     
     
       81. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the minimum girth size of said sheath girth is greater than 2.79 inch. 
     
     
       82. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the maximum girth size of said sheath girth is greater than 4.27 inch. 
     
     
       83. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the minimum girth size of said sheath girth is greater than 4.24 inch. 
     
     
       84. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the maximum girth size of said sheath girth is greater than 6.44 inch. 
     
     
       85. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the minimum girth size of said sheath girth is greater than 6.40 inch. 
     
     
       86. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the maximum girth size of said sheath girth is greater than 9.66 inch. 
     
     
       87. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the minimum girth size of said sheath girth is greater than 9.62 inch. 
     
     
       88. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the maximum girth size of said sheath girth is greater than 14.8 inch. 
     
     
       89. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said threaded shaft further comprises less than 161 threads per inch. 
     
     
       90. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said threaded shaft further comprises less than 81 threads per inch. 
     
     
       91. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said threaded shaft further comprises less than 65 threads per inch. 
     
     
       92. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said threaded shaft further comprises less than 41 threads per inch. 
     
     
       93. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said module further comprises a module cap. 
     
     
       94. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said sheath further comprises at least one longitudinal protrusion. 
     
     
       95. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said tip end of at least one said shaft member of said plurality of shaft members is configured with a profiled shape. 
     
     
       96. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said controller further comprises at least one handy area. 
     
     
       97. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said sheath further comprises at least one liquid channel. 
     
     
       98. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising a flexible shaft. 
     
     
       99. A girth adjustable device as recited in  claim 42 , wherein said male connection and/or said female connection of said controller are made of a ferromagnetic material. 
     
     
       100. A girth adjustable device as recited in  claim 42 , wherein said controller further comprises a flexible shaft. 
     
     
       101. A girth adjustable device as recited in  claim 70 , wherein said first end of said controller further comprises at least one male connection and at least one female connection, wherein said male connection removably fits into said female connection, wherein when said male connection is connected to said female connection and when said first end of said controller rotates, said second end of said controller rotates. 
     
     
       102. A girth adjustable device as recited in  claim 101 , wherein said male connection and/or said female connection of said controller are made of a ferromagnetic material. 
     
     
       103. A girth adjustable device as recited in  claim 101 , wherein said controller further comprises a flexible shaft. 
     
     
       104. A girth adjustable device as recited in  claim 101 , wherein said controller further comprises at least one locking system. 
     
     
       105. A girth adjustable device as recited in  claim 8 , wherein said controller-connector further comprises at least one wing nut fastener. 
     
     
       106. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said sheath further comprises an additive. 
     
     
       107. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said first end of said controller is configured as a coupling nut. 
     
     
       108. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said first end of said controller is configured as a motor shaft coupler. 
     
     
       109. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said first end of said controller is configured as a crank. 
     
     
       110. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said housing further comprises at least one said shaft member protrusion configured as a fastener. 
     
     
       111. A girth adjustable device as recited in  claim 1 ,  2 , or  4 , wherein said controller is manufactured with said threaded shaft. 
     
     
       112. A girth adjustable device as recited in  claim 4 , wherein said plurality of shaft members further comprises at least one module connector groove. 
     
     
       113. A girth adjustable device as recited in  claim 112 , further comprising at least one module having at least one conical section with a slant height, at least one anti-rotation connector selected from a group consisting of: a linear anti-rotation connector, a capital letter T shape anti-rotation connector, and an inclined capital letter T shape anti-rotation connector, and a canal selected from a group consisting of: a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity, wherein said canal receives said threaded shaft, wherein said module connector groove of said shaft member slidably receives said anti-rotation connector of said module having at least one conical section with a slant height, at least one anti-rotation connector selected from a group consisting of: a linear anti-rotation connector, a capital letter T shape anti-rotation connector, and an inclined capital letter T shape anti-rotation connector, and a canal selected from a group consisting of: a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity. 
     
     
       114. A girth adjustable device as recited in  claim 5 , wherein said plurality of shaft members further comprises at least one module connector groove. 
     
     
       115. A girth adjustable device as recited in  claim 114 , further comprising at least one module having at least one conical section with a slant height, at least one anti-rotation connector selected from a group consisting of: a linear anti-rotation connector, a capital letter T shape anti-rotation connector, and an inclined capital letter T shape anti-rotation connector, and a canal selected from a group consisting of: a non-threaded canal, a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity, wherein said canal receives said threaded shaft, wherein said module connector groove of said shaft member slidably receives said anti-rotation connector of said module having at least one conical section with a slant height, at least one anti-rotation connector selected from a group consisting of: a linear anti-rotation connector, a capital letter T shape anti-rotation connector, and an inclined capital letter T shape anti-rotation connector, and a canal selected from a group consisting of: a non-threaded canal, a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity, wherein said module having at least one conical section with a slant height, at least one anti-rotation connector selected from a group consisting of: a linear anti-rotation connector, a capital letter T shape anti-rotation connector, and an inclined capital letter T shape anti-rotation connector, and a canal selected from a group consisting of: a non-threaded canal, a threaded canal, a threaded canal having at least one fastener cavity, and a non-threaded canal having at least one fastener cavity is secured to said threaded shaft. 
     
     
       116. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the girth size of said sheath girth incrementally increases by less than 0.03937 inch when the controller rotates in the direction of increase of said sheath girth. 
     
     
       117. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the girth size of said sheath girth incrementally increases by more than 0.03937 inch when the controller rotates in the direction of increase of said sheath girth. 
     
     
       118. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the girth size of said sheath girth incrementally decreases by less than 0.03937 inch when the controller rotates in the direction of decrease of said sheath girth. 
     
     
       119. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein the girth size of said sheath girth incrementally decreases by more than 0.03937 inch when the controller rotates in the direction of decrease of said sheath girth. 
     
     
       120. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said controller is made of a magnetized metal. 
     
     
       121. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said threaded shaft is made of a magnetized metal. 
     
     
       122. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said housing is made of a magnetized metal. 
     
     
       123. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said module is made of a magnetized metal. 
     
     
       124. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , wherein said shaft member is made of a magnetized metal. 
     
     
       125. A girth adjustable device as recited in  claim 37 , wherein said closure element further comprises at least one connector. 
     
     
       126. A girth adjustable device as recited in  claim 39 , wherein said threaded shaft angular transmission housing of said threaded shaft angular transmission further comprises at least one angular transmission connector. 
     
     
       127. A girth adjustable device as recited in  claim 1 ,  2 ,  3 ,  4 , or  5 , further comprising at least one body skin protection element.

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